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A-Ram Jung

Korea University

研究室紹介

Professor A-Ram Jung's research lab specializes in inertial microfluidics, focusing on fluid-particle-structure interactions in microscale channels driven by fluid inertia. The lab investigates fundamental mechanisms of particle focusing, migration, and separation under inertial flows, with applications in biomedical diagnostics, lab-on-a-chip systems, and precision particle manipulation. Current research directions include designing microfluidic devices for high-throughput cell sorting, single-cell analysis, and integration with sensing technologies for point-of-care diagnostics.

inertial microfluidicsparticle focusingmicrofluidic deviceslab-on-a-chipfluid-particle interaction

Research Overview

Papers
1
Total Citations
76
Papers (5y)
1
Primary Field

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
1total
2019
Citations per year (5y)
76total
2019

Selected Papers

1
1
Article|76 citations·2019
A Minireview on Inertial Microfluidics Fundamentals: Inertial Particle Focusing and Secondary Flow
정아람

In 1961, Segre and Silberberg first reported the tubular pinch effect and numerous theoretical studies were subsequently published to explain the inertial particle migration phenomenon. Presently, as fluid mechanics meets micro- and nanotechnology, theoretical studies on intrinsic particle migration and flow phenomena associated with inertia are being experimentally tested and validated. This collective study on the fluid-particle-structure phenomena in microchannels involving fluid inertia is c

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